OA19301A - Metallic can lid. - Google Patents

Metallic can lid. Download PDF

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Publication number
OA19301A
OA19301A OA1201900392 OA19301A OA 19301 A OA19301 A OA 19301A OA 1201900392 OA1201900392 OA 1201900392 OA 19301 A OA19301 A OA 19301A
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OA
OAPI
Prior art keywords
lid
région
accordance
opening
closure unit
Prior art date
Application number
OA1201900392
Inventor
Gregor Anton Piech
Original Assignee
Gregor Anton Piech
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Gregor Anton Piech filed Critical Gregor Anton Piech
Publication of OA19301A publication Critical patent/OA19301A/en

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Abstract

A reclosable can lid is described which does not require a separation of a metal surface associated with chip formation in the opening process, which ensures the respective required leak tightness on the reclosing, even in the case of a pressure build-up resulting in the respective container, and which has a high functional reliability with a particularly economical manufacturing option.

Description

Metallic can hd
The présent invention relates to a metallic can lid having a reclosable opening, in particular for beverage cans and for containers for storing foods and other liquid, pasty, powdery and/or solid products.
A can lid having a reclosable opening is known from EP 1 607 341 A1 in which an opening is introduced in the metallic can lid and the margin of this opening is beaded to provide an anchorage possibility for a prefabricated plastic closure part. The plastic closure part encloses a base part which is to be connected to the bead margin of the can opening and in which an opening closed by a fiat stopper is formed. The fiat stopper is connected to the opening margin via a plastic tear seam so that the fiat stopper connected to a tear tab can be released from the plastic base part via the tear tab by exertion of a pull and can be pivoted into an open position. The opening can be temporarily closed again by pressing in the fiat stopper which is preferably conical at its lower side.
Reclosable can lids are furthermore described in DE 10 2010 013 531 A1 and EP 2 354 022 B1, for example.
Finally, a reclosable can lid is known from DE 10 2015 112 428 A1 of the applicant on which the présent invention is based and which is intended to be substantially improved by the invention.
It is therefore the object of the invention to design the known reclosable can lid such that its production is possible in an even more économie manner, the construction design is simplified, material savings can be achieved and the function is in this respect simultaneously improved.
This object is substantially satisfied by a metallic can lid having a microgap which 5 extends peripherally, which is provided in the metallic lid surface and which is sealed off at an inner lid side by a film; having a weakening line extending adjacent to said microgap in the film; having a sealing frame composed of a plastic material which is connected to the fixed lid surface and which surrounds the opening région; having a closure unit composed of a plastic material which is 10 connected to the metallic lid région which is disposed within the microgap and which can be pivoted open, said closure unit being pivotably attached to the fixed lid surface and being provided with a tear-open member disposed diametrically opposite the pivot bearing région, wherein the sealing frame and the closure unit cooperate via sealing and latching ribs and associated receiving grooves and the 15 metallic lid région disposed within the annular microgap is received and held in the opening région of the lid, in particular in a shape matched and/or force transmitting manner and in particular without a toothed arrangement; and wherein the film provided at the inner lid side and covering the microgap consists of a molded part, in particular a deep-drawn molded part, which reproduces the lower side structure 20 of the can lid forming a continuous metallic surface; and wherein both the sealing frame is connected to the fixed lid surface in a bonded manner and the closure unit is connected to the metallic lid région that can be pivoted open in a bonded manner, in particular by a thermal process using an adhesive lacquer layer which is preferably suitable for use with food and/or has lubricating properties.
Due to the interplay of the individual features of the can lid in accordance with the invention, it becomes possible to accommodate and to fasten both the sealing frame and the closure unit in a space saving manner and preferably in a recess of the can lid surface at the upper side of the can lid and thus to avoid the apertures 30 of the can lid surface required in known designs. This also brings about advantages with respect to hygiene, in particular in connection with the further spécial feature of the invention which comprises that the closure unit has at its total outer periphery a sealing apron which extends up to the fixed lid surface and which is preferably connected to the fixed lid surface in a bonded manner via the 5 adhesive lacquer layer.
It can be ensured in this manner that the plastic éléments disposed at the outer lid side cannot be infiltrated by contaminants and the like.
The lower side of the metallic can lid disposed at the inner can side and formed by a practically continuous métal surface only including the microgap is in turn connected in a bonded manner via the adhesive lacquer layer to the molded plastic film part which ensures the sealing off of the microgap, with it being important that no plastic parts belonging to the closure unit or to the sealing frame extend through the metallic lid material and, accordingly, only two components corne into contact with one another and hâve to be connected at the lower lid side, namely the metallic lid, on the one hand, and the molded plastic part, on the other hand.
The preferred use of a joining together of the lid région that can be pivoted open without a toothed arrangement and/or without undercuts is furthermore of advantage, said lid région first being punched out from the lid surface and then being pressed back into the lid surface again, wherein the récognition is used that the punching out process can be designed such that a conical expansion can be achieved in the lid material over a part région of the material thickness, said conical expansion enabling a shape matched and/or force transmitting connection between a fixed lid surface and a punched out lid région with a formation of the desired microgap.
The bonded connection can in particular comprise a plastic weld connection, with the adhesive lacquer serving for an adhesive promotion between the plastic and the métal, or a so-called hot melt connection.
The sealing frame, the closure unit and the molded film part are preferably exactly mutually aligned with respect to the metallic lid surface by means of positioning studs which are preferably point-shaped and associated recesses which are in particular cup-shaped.
While the studs for the plastic parts positioned at the outer side of the can lid are preferably formed at this plastic part, the cup-shaped recesses for receiving the studs of the sealing frame at the lower side or inner side of the lid simultaneously act as studs for positioning the molded plastic part which has correspondingly complementary recesses.
The finished can lid preferably comprises a composite material in the form of a sheet métal layer, in particular composed of aluminum or tin plate, which is coated at both sides by an adhesive lacquer and which is connected at the inner side to the film molded part via the adhesive lacquer layer, wherein the mechanical strength of the film component in the composite material is expediently selected such that, while ensuring the required overall strength of the composite material, the material thickness of the metallic component can be reduced, in particular by at least 1%, in comparison with a film-free component.
In view of the huge volume of can lids produced in practice, such a saving of material, even if only amounting to 1%, for example, already plays a comparatively large rôle under économie aspects and accordingly represents a corresponding advantage.
In accordance with a further embodiment of the invention, the molded film part of the composite material extends up to and into the bead margin which is provided for connecting the lid to a can and which acts there as a sealing material and as corrosion protection.
Since additional sealing material is typically required in the région of the bead connection in conventional cans, a practically relevant saving and a cost réduction can in turn be achieved by the measure in accordance with the invention.
The pivot bearing région molded at the closure unit has, between its fastening région and the pivot part, a hoop région which is closed at the lid side, which expands in a gusset-like manner at both sides, which acts as a tilt spring and which enables a bistable positioning of the closure unit. This arrangement ensures that the closure unit is moved to an opening angle of more than 130° and is held open in this position when an opening angle of approximately 90° is exceeded, whereas the closure unit snaps back from the open position to an opening angle position of less than 30° on a falling below of an opening angle of approximately 90°. From this position, the closure unit can again be pressed into the sealing closed position without problem. This process can be carried out reversibly in both directions a multiple of times.
The configuration of this région, acting as a tilt spring, closed at the outer side is also important in this respect since the gaps which are frequently présent in conventional solutions and which are prone to contamination are thereby avoided.
The embodiment of the sealing frame and the closure unit is of particular significance for the function of the reclosable can lid in accordance with the invention. The sealing frame and the closure unit cooperate via an inwardly disposed sealing rib and an outwardly disposed latching rib which engage into corresponding receiving grooves. A predefinable sealing pairing of slanted surfaces is in this respect provided between the sealing rib and a wall of the associated receiving groove, with the sélection of the slant being dépendent on which inner can pressure has to be maintained after the reclosing of the can has taken place, wherein it must simultaneously be taken into considération that the opening process is not thereby made more difficult in a disruptive manner.
The latching rib is provided with a short slanted surface lug which coopérâtes with a counter-latch of the associated receiving groove, with a predefinable clearance being provided between the two cooperating surfaces when the can opening is closed.
This small clearance can be used to enable an excess pressure réduction during the opening movement of the closure unit without the lid already being opened so far in this phase that there would be a risk of a spurting out of liquid.
A further spécial feature of the invention that is important with respect to the constantly sought réduction of the production costs of can lids is that the can lid at least substantially comprises the same aluminum alloy as the container part connected to it; and the metallic material thickness of the can lid is substantially equal to the material thickness of the container part and preferably at least does not exceed twice the value of the material thickness of the container part, with the material thickness of the container part being in a range of approximately 0.1 mm and less.
Known cans, in particular beverage cans, comprise aluminum alloys, with it being typical to use an aluminum alloy of the 3000 sériés for the cylindrical can part and to use an aluminum alloy of the 5000 sériés for the lid part to take account of the different technical demands with respect to the can part and the lid part. So far, it has only been possible to reduce the wall thickness of the can wall to approximately 0.09 mm, and indeed by using an aluminum alloy of the 3000 sériés which is less expensive than the aluminum alloy of the 5000 sériés which is typically used as the lid material. The wall thickness of the lid material has to be at least twice as large as the material thickness of the can wall to ensure the necessary compression strength of the can despite the notch to be formed in the 5 lid material in known lids for providing a tear-open groove. This notch has a depth which typically corresponds to approximately half the material thickness of the can lid. However, ail the demands on the can lid with respect to the opening criteria and the leak tightness can be satisfied by the use of the higher-quality alloy sériés Aluminum 5000.
In addition to the saving of production costs achieved by the material sélection or by the embodiment of the composite material and by weight réduction, it is of considérable importance that, also due to the spécifie microgap design, it is no longer necessary to use a spécifie material such as an aluminum alloy of the 5000 15 sériés, in particular 5182, for the lid material since an inexpensive aluminum of the 3000 sériés can now also be used for the metallic lid material.
The invention furthermore relates to a method of manufacturing a sealed opening, which can be torn open or pressed in and can preferably be reclosed, in an areal 20 sheet métal material, in particular in a can lid which is configured as reclosable or which corresponds to a standard can lid in which the opening région can either be torn open or can be pressed into the can interior.
Further details and advantages of the invention are set forth in the dépendent 25 claims and will be explained in the following description of an embodiment with reference to the drawing.
There are shown in the drawing:
Fig. 1 a plan view of a can lid for a beverage can;
Fig. 2 a side view of the can lid in accordance with Fig. 1,
Fig. 3 a sectional view in accordance with the line A-A in Fig. 1,
Fig. 4 an enlarged représentation of the detail B in Fig. 3;
Fig. 5 an enlarged représentation of the detail C from Fig. 3;
Fig. 6 a further enlarged représentation of the detail D from Fig. 5 for explaining the coupling mechanism between the sealing frame and the closure unit; and
Fig. 7 a schematic représentation for explaining the peripheral margin 15 design of the punched part defining the opening région of the can lid.
The plan view of Fig. 1 shows a can lid 1 which is in particular intended for a beverage can and into whose lid surface a reclosable opening system is 20 integrated.
A lid région 10 is provided in the can lid for this purpose, said lid région being able to be opened and pivoted upwardly via means that will still be represented and described in detail, and indeed via a pivot bearing région whose fixed part 19 is fastened to the can lid. In this respect, a tilt spring section 21 is provided between this fixed part 19 and a closure unit 11 fixedly connected to the metallic lid région 10 and allows the closure unit 11 to open to more than 130° on an exceeding of an opening angle of approximately 90°, i.e. allows the closure unit to snap into its end open position. If the closure unit falls below an opening angle of approximately 90° in the course of the closing, the closure unit snaps back to an opening angle of less than 30° and the closure unit can again be pressed manually without problem from this part open position into a sealing closed position. This process can be carried out reversibly in both directions a multiple of times.
The can lid 1 is preferably connected to the associated container via a bead margin 3.
The side view of the can lid 1 in accordance with Fig. 1 illustrâtes that the closure and opening System in accordance with the invention is of such a fiat construction 10 that it is received completely within the depth of the lid part and no parts project beyond the lid contour in the closed position.
Fig. 3 shows a section through the lid in accordance with Fig. 1 corresponding to the line A-A, with the detailed régions that are particularly important for the design 15 and function being characterized by B and C which will be explained in detail in the following.
The shown detail D shows the structural design of a main component of the can lid in the form of a composite material in a greatly enlarged manner.
This main component of the can lid comprises a suitably formed sheet métal layer 5 composed of aluminum or tin plate and this sheet métal layer is provided at both sides with a respective adhesive lacquer layer 7 which serves as a bonding agent and which makes it possible to ensure a high-strength and permanent connection 25 in a bonded manner between métal, in particular aluminum, and the plastic of the film 6 which preferably comprises polypropylene, which is provided at the lower lid side, i.e. at the inner can side, and which is suitable for use with food. The mutual connection of the individual components of the composite material preferably takes place in a so-called heat sealing process in which the plastic is partly melted 30 so that a connection results with the métal in a bonded manner.
Although the material thickness of the metallic can lid part can already be reduced due to the use of the microgap technology already described in the introduction in contrast to can lids having a tear line that can be torn open, it is of advantage to use the described composite material since it allows the composite material to be further reduced without losses with respect to the required strength values of the material thickness of the sheet métal layer and to thereby achieve material and/or cost savings that are significant in practice.
Fig. 4 shows the région B in accordance with Fig. 3 in enlarged form, i.e. the région at which the tear-open member 17 is fastened to the lid part that can be pivoted open, and indeed at its outer margin, such that a lever effect in particular also results on the upward pulling of the lid part due to the elasticity of the lid material and promotes the opening of the lid part.
The molded part contour of the plastic film 6 which is connected to the sheet métal layer 5 in a bonded manner via the adhesive lacquer layer 7 corresponds to the contour of the lower side of the sheet métal part 5 and preferably extends into the bead région 3 where it can simultaneously act as a seal and as corrosion protection.
The lid région 10 that can be pivoted open indicated in Fig. 1 is provided in the can lid material 5 and, in accordance with the invention, is not bounded by a material weakening as in the typical prior art, but rather by a microgap 8. This peripheral microgap 8 is preferably formed in that the lid région 10 is punched out from the sheet métal material and is subsequently pressed back into the opening again and is held by clamping such that a planar métal surface is in turn présent and the metallic lid provided with an adhesive lacquer layer at both sides can again be handled as a uniform part.
Independently of the method specifically used for releasing the hd région that can be pivoted open from the lid material, only one connection formed by a clamping holder is présent in the région of the micrograp so that, when a can provided with the lid in accordance with the invention is opened for the first time, no métal séparation of any kind has to take place and the otherwise unavoidable formation of metallic microparticles is thus excluded. This avoidance of the création of microparticles in the opening process, in particular microparticles composed of aluminum, is important under health aspects since such microparticles unavoidably also enter into the product contained in the respective can and thus also into the human body.
The microgap 8 which is preferably formed by a straight or curved and nontoothed line is covered at the lower side, i.e. at the inner lid side, by the plastic film and is thus sealed off. The plastic film which preferably comprises polypropylene suitable for use with food has a notch 9 which is adjacent to the microgap and which can peripherally hâve the same depth or optionally also a different depth and which ensures that only a comparatively small force is required to open the lid. The spacing between the microgap 8 and the notch 9 preferably amounts to approximately double the film thickness, that is, for example, 3 to 4 tenths of a millimeter.
The required opening force is not only dépendent on which force is required for separating the connection between the sheet métal layer 5 and the plastic film 6 in the région of the microgap 8, but also on the sealing pairing which is implemented in the coopération of the sealing frame 14 and the closure unit 11.
The sealing frame 14 composed of a plastic material, in particular polypropylene, surrounds the opening région and, preferably in a recess of the sheet métal layer 5, is fixedly connected to the metallic lid material via the already mentioned adhesive lacquer layer 7. In this respect, it is possible to only provide this fixed connection in the base région of the recess.
The sealing frame 14 has two receiving grooves 15, 16, which are separated from 5 one another by a center web 20, for a latching rib 12 and for a sealing rib 13 that are provided at the closure unit 11. This closure unit 11 likewise comprising a plastic material, preferably polypropylene, is fixedly connected to the metallic lid in an analog manner to the sealing frame 14; however, it is not connected to the fixed-position lid surface 2, but rather to the lid région 10 that can be pivoted open.
The lid part that can be pivoted open is thus formed by the metallic lid région 10, which is bounded by the microgap 8, and by the closure unit 11 which is fastened to said metallic lid région at the margin side and at which the tear-open member 17 is also molded.
This tear-open member 17 connected to the outer margin of the closure unit 11 is provided with a holding or fixing element 22 which extends toward the lid part and is easily releasably fixed there such that the intactness of the respective packaging can easily be checked using this connection.
A pivot bearing région 18 molded at this frame is formed at the closure unit 11 disposed diametrically opposite the tear-open member 17 and is fixedly connected to the lid surface disposed outside the lid part that can be pivoted open, which will still be explained with reference to Fig. 5.
Fig. 5 shows the detailed région C in accordance with Fig. 3 in an enlarged représentation, i.e. the pivot bearing région 18 disposed diametrically opposite the tear-open member 17 in connection with the sealing frame and the closure unit 11 which are in engagement with one another in the manner shown in the closed State of the can lid and form a sealed snap-in latching connection.
The rib 13 received in the receiving groove 16 and the rib 12 received in the receiving groove 15 differ functionally, i.e. separate functions are présent at least in part, whereby an optimization of the coopération of the sealing frame 14 and the closure unit 11 is made possible. The closure unit 11 is connected to the fixed part 5 of the pivot bearing via a bistable tilt spring section 21 integrated therewith. Said tilt spring section holds the lid part, comprising the metallic lid région 10, the closure unit 11 fastened thereto and the tear-open member 17, open at more than 130° on an exceeding of approximately 90° so that the inner space of the respective container is accessible in an idéal manner. On a falling below of 10 approximately 90°, the lid part snaps back to an opening angle of less than 30°.
From this open position, the lid part can again be moved or pressed back into the sealing closed position. This process can be carried out reversibly in both directions a multiple of times.
Viewed from above, the pivot bearing région 18 represents a practically closed région, i.e. the gaps and openings are avoided that are frequently présent in known solutions, above ail in the tilt spring région. However, the further feature of the invention that the closure unit 11 has at its total outer periphery a sealing apron 26, which extends up to the fixed lid surface 2 and which is preferably connected to the lid surface 2 in a bonded manner via the adhesive lacquer layer, is of particular importance under hygienic aspects. It is reliably prevented in this manner that any contamination, moisture and the like can move beneath the plastic éléments, i.e. an idéal is achieved under hygienic aspects that is not présent in conventional reclosable can lids of this kind. This connection is separated on the first opening.
As can be recognized in the further enlarged detailed représentation in accordance with Fig. 6, the sealing rib 13 forms a sealing surface pairing 23 with the receiving groove 16. This sealing surface pairing 23 contributes to the snap-in 30 process in the closing process and holds the closure unit at a defined position in the closed State.
However, the opening résistance can also be set by predefining the inclination of 5 the sealing surfaces of the sealing surface pairing 23 cooperating with one another, i.e. a slanted surface pairing can be selected which ensures that the respective occurring internai pressure is maintained, on the one hand, and that the opening process is not made too difficult, on the other hand.
The latching rib 12 and the associated receiving groove 15 likewise hâve short slanted surfaces which cooperate with one another and which secure a latching snapping into place, on the one hand, but also a small free relative movement in the form of a clearance 25 between the counter-latch 24 and the short slanted surface provided at the latching rib 12, on the other hand. This free movability can 15 be used to allow a small initial opening movement on a repeated opening of the can lid, in which opening movement a possibly présent internai pressure is reduced without the lid already being opened so far that liquid could exit in a possibly disruptive manner.
The schematic représentation in accordance with Fig. 7 illustrâtes a preferably used process of punching out the lid région 10 from the sheet métal layer 5 and the insertion of the punched out région into the opening formed that takes place again subsequently or later. The specifically selected punching out process, i.e. the spécifie sélection of the punch and the die, has the resuit that the peripheral contour of the punched out région has a smooth eut section and a slanted eut section viewed over its thickness that make it possible or make it easier to press the punched out sheet métal layer région, while forming a microgap, into the punched out opening again immediately or at a later time, and indeed such that the punched out région is held in the opening by a clamping sufficient for the further processing.
A particular advantage results with the described punching process when the coating of the sheet métal layer takes place with an adhesive lacquer layer having lubricating properties since any additional lubricants otherwise required in a punching process are hereby dispensable since the adhesive lacquer layer solely provides the required lubricant in the punching process. This means that a lubricant suitable for use with food is présent since the adhesive lacquer layers used in accordance with the invention are suitable for use with food and accordingly no complex and/or expensive cleaning steps are required such as 10 would typically be the case in the event of an otherwise additionally required lubricant.
The punch and the die are preferably selected such that the resulting smooth eut section extends over less than 50% of the material thickness and the remaining slanted eut section expands substantially conically. A sufficient force transmission is thereby achieved when the punched out part is inserted or pressed into the sheet métal layer again and it is no longer necessary to provide spécifie toothed arrangements or undercuts between the punched out part and the sheet métal layer in order to achieve the necessary holding forces.
The reclosable can lid in accordance with the invention is therefore also advantageous in practical handling since the tear-open member 17 preferably configured as a ring tab is easily accessible, can easily be gripped and enables an opening of the respective can via a pulling movement that can be carried out comfortably. There is the advantage with the reclosing that the complété reclosing can preferably be felt and can additionally be acoustically perceived via the snapin latching connection.
The can lid in accordance with the invention can be used for ail kinds of containers 30 which should be reclosable, with the sealed connection of the can lid to the respective container not only being able to take place via a bead margin, but above ail in non-metallic containers also via adhesive connections, weld connections and the like.
The invention is further directed at a method of manufacturing a sealed opening, which can be torn open or pressed in and can preferably be reclosed, in an areal sheet métal material, in particular in a can lid, such as is described in detail in claims 14 to 18.
This manufacturing process which works with a sheet métal layer preferably coated at both sides by an adhesive lacquer layer suitable for use with food is both suitable for the manufacture of can lids of the kind described within the framework of this invention and for the manufacture of standard can lids. In such standard can lids, a two-armed lever member is provided for opening the respective opening région and is fixedly connected to the lid material. The opening région is in this respect configured as a tongue tab which is separated from the lid surface by a microgap which extends over the tab periphery, wherein the tongue tab basis connected to the lid surface forms a kink bearing that becomes effective in the opening process. In this respect, the lower side of the metallic lid is coated or laminated by a plastic film. This film is designed as weakened adjacent to the microgap to ensure an opening of the respective can without problem. If the arrangement is made such that the tongue tab is pivoted into the can interior in the opening process together with the part région of the plastic coating which covers it at the lower side and which is bounded by the weakening line, the weakening line is disposed outside the microgap.
If the arrangement is made such that the tongue tab is pivoted outwardly in the opening process together with the part région of the plastic coating which covers it at the lower side and which is bounded by the weakening line, the weakening line is disposée! within the microgap. Details of such standard can lids are described in the German patent application DE 10 2015 122 548.4.
The method in accordance with the invention can be designed in connection with reclosable can lids of the described kind such that the punched out lid part is immediately pressed directly into the sheet métal layer again and is held there in a force transmitting manner by a spring force in the course of a return stroke;
however, it is also possible to supply the sheet métal layer, on the one hand, and the punched out part région, on the other hand, separately to further production stages, in which they are connected to the plastic éléments required for implementing the reclosable opening, and to subsequently join the two components and to permanently connect them to one another in the présent manner already described, wherein the functional reclosable can lid is then obtained.
Reference numéral list can lid fixed lid surface
3 bead margin composite material sheet métal layer (aluminum, tin plate) plastic film, molded part adhesive lacquer layer
8 microgap notch lid région, can be pivoted open closure unit latching rib
13 sealing rib sealing frame receiving groove, internai receiving groove, external tear-open member
18 pivot bearing région fixed part of the pivot bearing, fastening région center web tilt spring section fixing element
23 sealing pairing of slanted surfaces counter-latch clearance sealing apron

Claims (35)

  1. Claims
    1. A metallic can lid having a reclosable opening, the can lid having a microgap (8) which extends peripherally, which is provided in a metallic lid surface and which is sealed off at an inner lid side by a film (6); having a weakening line (9) extending adjacent to said microgap (8) in the film;
    having a sealing frame (14) composed of a plastic material which is connected to a fixed lid surface (2) and which surrounds an opening région; having a closure unit (11 ) composed of a plastic material which is connected to a metallic lid région (10) which is disposed within the microgap (8) and which can be pivoted open, said closure unit (11) being pivotably attached to the fixed lid surface (2) and being provided with a tear-open member (17) disposed diametrically opposite a pivot bearing région (18), wherein the sealing frame (14) and the closure unit (11) cooperate via sealing and latching ribs (12, 13) and associated receiving grooves (15, 16) and the metallic lid région (10) disposed within the microgap (8) is received and held in the opening région ofthe lid; and wherein the film (6) provided at the inner lid side and covering the microgap (8) consists of a molded part, which reproduces a lowerside structure ofthe can lid forming a continuous metallic surface; characterized in that both the sealing frame (14) is connected to the fixed lid surface (2) in a bonded manner and the closure unit (11 ) is connected to the metallic lid région (10) that can be pivoted open in a bonded manner.
  2. 2. A can lid in accordance with claim 1, characterized in that the sealing frame (14), the closure unit (11 ) and the molded film part (6) are exactly mutually aligned with respect to the metallic lid surface by means of positioning studs and associated recesses.
  3. 3. A can lid in accordance with claim 1, characterized in that the can lid is formed by a composite material in the form of a sheet métal layer (5), which is coated at both sides by an adhesive lacquer (7) and which is connected at an inner lid side to the film molded part (6) via the adhesive lacquer layer (7); and in that the sealing frame (14), the closure unit (11 ) and the pivot bearing région (18) are permanently connected to the sheet métal layer (5) via the outwardly disposed adhesive lacquer layer (7).
  4. 4. A can lid in accordance with claim 3, characterized in that the mechanical strength ofthe film component in the composite material (4) is selected such that, while ensuring the required overall strength ofthe composite material, the material thickness ofthe metallic component can be reduced in comparison with a film-free component.
  5. 5. A can lid in accordance with claim 3 or claim 4, characterized in that the molded film part (6) ofthe composite material (4) extends up to and into a bead margin (3) which is provided for connecting the lid to a can and which acts there as a sealing material and as corrosion protection.
  6. 6. A can lid in accordance with one or more of the preceding daims, characterized in that the pivot bearing région (18) molded at the closure unit (11) has, between a fastening région (19) and a pivot part, a hoop région (21) which is closed at an outer side, which expands in a gusset-like manner at both sides, which acts as a tilt spring, which moves the closure unit (11) into an open position at an angle of more than 130° after an opening angle of 90° has been exceeded and which moves the closure unit (11) to an opening angle of less than 30° on a falling below of an opening angle of 90°, whereupon the closure unit can be pressed manually from this position into a sealed off closed position.
  7. 7. A can lid in accordance with one or more of the preceding claims, characterized in that the sealing frame (14) has inwardly and outwardly disposed receiving grooves (15, 16) which are each peripheral;
    and in that a peripheral sealing rib (13) is associated with the inwardly disposed groove (15) and a peripheral latching rib (12) is associated with the outwardly disposed groove (16) at the closure unit (11 ), with a sealing pairing (23) of slanted surfaces predefinable in their inclination being provided between the sealing rib (13) and a wall ofthe receiving groove (15) and the latching rib (12) having a predefinable clearance in an opening direction with respect to a counter-latch (24) in the receiving groove (16), and/or with a snap-in latching connection having haptic and/or acoustic feedback being formed.
  8. 8. A can lid in accordance with one or more ofthe preceding claims, characterized in that the weakening line or notch (9) adjacent to the microgap (8) has a different thickness in its extent, with, for the purpose of excess pressure réduction in a can, a région of the film that is first acted on by an opening force in an opening process has a notch having a larger depth than an adjoining part région which is short, which has a smaller depth and which is in turn followed by a notch région having a depth which is equal to the notch depth in the initial région ofthe opening movement.
  9. 9. A can lid in accordance with claim 8, characterized in that the excess pressure réduction takes place during the opening movement of the closure unit (11) within the latching rib clearance (25).
  10. 10. A can lid in accordance with one or more of the preceding claims, characterized in that the metallic can lid comprises the same aluminum alloy as a container part connected to it.
  11. 11. A can lid in accordance with claim 10, characterized in that the material thickness ofthe can lid is substantially equal to the material thickness of the container part, with the material thickness of the container part being in a range of approximately 0.1 mm and less.
  12. 12. A can lid in accordance with one or more of the preceding claims, characterized in that the closure unit (11 ) has at its outer periphery a sealing apron (26) which extends up to the fixed lid surface (2) and which is connected to the lid surface (2) in a bonded manner.
  13. 13. A can lid in accordance with one or more ofthe claims, which is for beverage cans or for containers for storing foods and other liquid, pasty, powdery and/or solid products, and/or wherein the microgap (8) is annular.
  14. 14. A can lid in accordance with one or more of the claims, wherein the metallic lid région (10) disposed within the microgap (8) is received and held in the opening région ofthe lid in a shape matched and/or force transmitting manner.
  15. 15. A can lid in accordance with claim 14, wherein the metallic lid région (10) disposed within the microgap (8) is received and held in the opening région ofthe lid without a toothed arrangement.
    5 16 A can lid in accordance with one or more of the claims, wherein the film (6) provided at the inner lid side and covering the microgap (8) consists of a deep-drawn molded part.
  16. 17. A can lid in accordance with one or more of the claims, wherein the sealing 10 frame (14) is connected to the fixed lid surface (2) by a thermal process using an adhesive lacquer layer (7).
  17. 18. A can lid in accordance with claim 17, wherein the adhesive lacquer layer (7) is suitable for use with food and/or has lubricating properties.
  18. 19. A can lid in accordance with claim 2, wherein the positioning studs are point-shaped.
  19. 20. A can lid in accordance with claim 2 or claim 19, wherein the associated
    20 recesses are cup-shaped.
  20. 21. A can lid in accordance with claim 3, wherein the sheet métal layer (5) is composed of aluminum or tin plate.
    25
  21. 22. A can lid in accordance with claim 3 or claim 21, wherein the closure unit (11 ) and the pivot bearing région (18) are permanently connected to the sheet métal layer (5) via the outwardly disposed adhesive lacquer layer (7) by plastic welding or by a so-called hot melt connection.
  22. 23. A can lid in accordance with claim 4, wherein the material thickness of the metallic component can be reduced by at least 1%, in comparison with a film-free component.
    5
  23. 24. A can lid in accordance with claim 10, wherein the aluminium alloy is of the
    Aluminum 3000 sériés.
  24. 25. A can lid in accordance with claim 24, wherein the aluminum alloy is 3104 alloy.
  25. 26. A can lid in accordance with claim 11, wherein the material thickness of the can lid does not exceed twice the value of the material thickness of the container part.
    15
  26. 27. A can lid in accordance with claim 12 and claim 17, wherein the closure unit (11) is connected to the lid surface (2) via the adhesive lacquer layer (7).
  27. 28. A can or a container composed of métal or plastic, characterized in that
    20 a hermetically sealed closure is produced by using a can lid in accordance with one or more of the preceding claims.
  28. 29. A method of manufacturing a sealed opening, which can be torn open or pressed in, in an areal sheet métal material, wherein an areal région
    25 corresponding to the opening is punched out from coated sheet métal material in such a manner that a punching die engaging at a coated side coopérâtes with a die which brings about a smooth eut région and an adjoining slanted eut région of a punched out part;
    30 the punched out areal région whose peripheral contour is complementary to the die shape is again inserted into the opening in the sheet métal material and is held therein in a shape matched and/or force transmitting manner; and a microgap formed between the sheet métal material and the punched out areal région is covered at one side by a film which is areally coated onto or laminated onto the sheet métal material and which is provided with a peripheral weakening or notch adjacent to the microgap, characterized in that the sheet métal material is coated at least at one side by an adhesive lacquer layer and a lubricant required for the punching process is supplied exclusively and solely by the adhesive lacquer layer.
  29. 30. A method in accordance with claim 29, characterized in that the sheet métal material is provided with an adhesive lacquer layer suitable for use with food at both sides.
  30. 31. A method in accordance with claim 29 or claim 30 characterized in that a preshaped film adapted to the sheet métal layer shape is used as the film and this molded film part is joined to the sheet métal layer by means of the adhesive lacquer layer.
  31. 32. A method in accordance with claim 29, characterized in that the punched out areal région is fixed in the opening in a shape matched and/or force transmitting manner by means of a spring force on a return stroke of a punch plunger.
  32. 33. A method in accordance with claim 29, characterized in that the smooth eut région at the punched out areal région extends over less than 50% ofthe material thickness.
  33. 34. A method in accordance with claim 29, wherein the sealed opening can be reclosed.
  34. 35. A method in accordance with claim 30, wherein the sheet métal material is 10 provided with said adhesive lacquer layer suitable for use with food at both sides over the full area.
  35. 36. A method in accordance with claim 33, wherein the slanted eut région expands conically.
OA1201900392 2017-04-05 2017-05-12 Metallic can lid. OA19301A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP17165040.1 2017-04-05

Publications (1)

Publication Number Publication Date
OA19301A true OA19301A (en) 2020-06-05

Family

ID=

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